Publication: Impact of TGF-β family-related growth factors on chondrogenic differentiation of adipose-derived stem cells isolated from lipoaspirates and infrapatellar fat pads of osteoarthritic patients.
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Identifiers
Date
2018-04-13
Authors
Lopez-Ruiz, E
Jimenez, G
Kwiatkowski, W
Montañez, E
Arrebola, F
Carrillo, E
Choe, S
Marchal, J A
Peran, M
Advisors
Journal Title
Journal ISSN
Volume Title
Publisher
AO Research Institute Davos
Abstract
The success of cell-based approaches for the treatment of cartilage defects requires an optimal autologous cell source with chondrogenic differentiation ability that maintains its differentiated properties and stability following implantation. The objective of this study was to compare the chondrogenic capacity of mesenchymal stem cells (MSCs) isolated from lipoaspirates (ASCs) and the infrapatellar fat pad (IFPSCs) of osteoarthritic patients and treated with transforming growth factor (TGF)-β family-related growth factors. Cells were cultured for 6 weeks in a 3D pellet culture system with the chimeric activin A/bone morphogenic protein (BMP)-2 ligand (AB235), the chimeric nodal/BMP-2 ligand (NB260) or BMP-2. To investigate the stability of the new cartilage, ASCs-treated pellets were transplanted subcutaneously into severe combined immunodeficiency (SCID) mice. Histological and immunohistochemical assessment confirmed that the growth factors induced cartilage differentiation in both isolated cell types. However, reverse transcription-quantitative PCR results showed that ASCs presented a higher chondrogenic potential than IFPSCs. In vivo results revealed that AB235-treated ASCs pellets were larger in size and could form stable cartilage-like tissue as compared to NB260-treated pellets, while BMP-2-treated pellets underwent calcification. The chondrogenic induction of ASCs by AB235 treatment was mediated by SMAD2/3 activation, as proved by immunofluorescence analysis. The results of this study indicated that the combination of ASCs and AB235 might lead to a cell-based cartilage regeneration treatment.
Description
MeSH Terms
Adipose Tissue
Aged
Animals
Cell Differentiation
Cell Separation
Chondrogenesis
Female
Humans
Lipectomy
Male
Mice, SCID
Middle Aged
Osteoarthritis
Phenotype
Smad Proteins
Stem Cell Transplantation
Stem Cells
Transforming Growth Factor beta
Aged
Animals
Cell Differentiation
Cell Separation
Chondrogenesis
Female
Humans
Lipectomy
Male
Mice, SCID
Middle Aged
Osteoarthritis
Phenotype
Smad Proteins
Stem Cell Transplantation
Stem Cells
Transforming Growth Factor beta
DeCS Terms
Condrogénesis
Células madre
Diferenciación celular
Factor de crecimiento
Transformador beta
Lipectomía
Osteoartritis
Proteínas Smad
Separación celular
Tejido adiposo
Células madre
Diferenciación celular
Factor de crecimiento
Transformador beta
Lipectomía
Osteoartritis
Proteínas Smad
Separación celular
Tejido adiposo
CIE Terms
Keywords
Adipose Tissue, Adipose stem cells, chondrogenic differentiation, osteoarthritis, transforming growth factor-β family-related growth factors